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大鼠Spag5在体细胞中与内质网和微管相关联,但在精子中与外周致密纤维相关联。

Rat Spag5 associates in somatic cells with endoplasmic reticulum and microtubules but in spermatozoa with outer dense fibers.

作者信息

Fitzgerald Carolyn J, Oko Richard J, van der Hoorn Frans A

机构信息

Department of Biochemistry and Molecular Biology, University of Calgary, Calgary, Alberta, Canada.

出版信息

Mol Reprod Dev. 2006 Jan;73(1):92-100. doi: 10.1002/mrd.20388.

DOI:10.1002/mrd.20388
PMID:16211599
Abstract

The leucine zipper motif has been identified as an important and specific interaction motif used by various sperm tail proteins that localize to the outer dense fibers. We had found that rat Odf1, a major integral ODF protein, utilizes its leucine zipper to associate with Odf2, another major ODF protein, Spag4 which localizes to the interface between ODF and axonemal microtubule doublets, and Spag5. The rat Spag5 sequence indicated a close relationship with human Astrin, a microtubule-binding spindle protein suggesting that Spag5, like Spag4, may associate with the sperm tail axoneme. RT PCR assays indicated expression of Spag5 in various tissues and in somatic cells Spag5 localizes to endoplasmic reticulum and microtubules, as expected for an Astrin orthologue. MT binding was confirmed both in vivo and in in vitro MT-binding assays: somatic cells contain a 58 kDa MT-associated Spag5 protein. Western blotting assays of rat somatic cells and male germ cells at different stages of development using anti-Spag5 antibodies demonstrated that the protein expression pattern changes during spermatogenesis and that sperm tails contain a 58 kDa Spag5 protein. Use of affinity-purified anti-Spag5 antibodies in immuno electron microscopy shows that in rat elongated spermatids and epididymal sperm the Spag5 protein associates with ODF, but not with the axonemal MTs. This observation is in contrast to that for the other Odf1-binding, MT-binding protein Spag4, which is present between ODF and axoneme. Our data demonstrate that Spag5 has different localization in somatic versus male germ cells suggesting the possibility of different function.

摘要

亮氨酸拉链基序已被确定为一种重要且特异的相互作用基序,被多种定位于外致密纤维的精子尾部蛋白所使用。我们发现,大鼠Odf1是一种主要的整合型ODF蛋白,它利用其亮氨酸拉链与另一种主要的ODF蛋白Odf2、定位于ODF与轴丝微管二联体之间界面的Spag4以及Spag5相互作用。大鼠Spag5序列表明它与人类纺锤体微管结合蛋白Astrin关系密切,这表明Spag5可能像Spag4一样,与精子尾部轴丝相关。RT-PCR分析表明Spag5在多种组织中表达,并且在体细胞中,Spag5定位于内质网和微管,这与Astrin同源物的预期定位一致。体内和体外微管结合试验均证实了Spag5与微管的结合:体细胞中含有一种58 kDa的与微管相关的Spag5蛋白。使用抗Spag5抗体对大鼠体细胞和不同发育阶段的雄性生殖细胞进行蛋白质印迹分析表明,该蛋白的表达模式在精子发生过程中发生变化,并且精子尾部含有一种58 kDa的Spag5蛋白。在免疫电子显微镜中使用亲和纯化的抗Spag5抗体表明,在大鼠伸长型精子细胞和附睾精子中,Spag5蛋白与ODF相关,但与轴丝微管无关。这一观察结果与另一种与Odf1结合且与微管结合的蛋白Spag4不同,Spag4存在于ODF和轴丝之间。我们的数据表明,Spag5在体细胞和雄性生殖细胞中的定位不同,这表明其功能可能不同。

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